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转录组分析揭示了KC462061在原油生物降解过程中漆酶基因的差异表达。

Transcriptome Profiling Reveals Differential Gene Expression of Laccase Genes in KC462061 during Biodegradation of Crude Oil.

作者信息

Alharbi Nada K, Alzaban Mayasar I, Albarakaty Fawziah M, Abd El-Aziz Abeer R M, AlRokban Ahlam H, Mahmoud Mohamed A

机构信息

Department of Biology, College of Science, Princess Nourah bint Abdulrahman University, P.O. Box 84428, Riyadh 11671, Saudi Arabia.

Department of Biology, Faculty of Applied Science, Umm Al-Qura University, P.O. Box 715, Makkah Al Mukarramah 21955, Saudi Arabia.

出版信息

Biology (Basel). 2022 Apr 7;11(4):564. doi: 10.3390/biology11040564.

Abstract

Fungal laccases have high catalytic efficiency and are utilized for the removal of crude oil because they oxidize various aliphatic and aromatic hydrocarbons and convert them into harmless compounds or less toxic compounds, thus accelerating the biodegradation potential of crude oil. Laccases are important gene families and the function of laccases genes varied widely based on transcription and function. Biodegradation of crude oil using KC462061 was studied in the current study beside the transcription level of eight laccase () genes have participated in biodegradation in the presence of aromatic compounds, and metal ions. Time-course profiles of laccase activity in the presence of crude oil indicated that the five inducers individual or combined have a very positive on laccase activity. In the status of the existence of crude oil, the synergistic effect of Cu-ABTS compound caused an increase in laccase yields up to 22-fold after 10 days than control. The biodegradation efficiencies of KC462061 for aliphatic and aromatic hydrocarbons of crude oil were 82.1 ± 0.2% and 77.4 ± 0.6%, respectively. The crude oil biodegradation efficiency was improved by the supplemented Cu-ABTS compound in KC462061. Gas chromatography-mass spectrometry was a very accurate tool to demonstrate the biodegradation efficiencies of KC462061 for crude oil. Significant differences were observed in the SDS-PAGE of KC462061 band intensities of laccase proteins after the addition of five inducers, but the Cu-ABTS compound highly affects very particular laccase electrophoresis. Quantitative real-time polymerase chain reaction (qPCR) was used for the analysis of transcription profile of eight laccase genes in KC462061 with a verified reference gene. Cu ions and Cu-ABTS were highly effective for efficient laccase expression profiling, mainly via and transcription induction. The current study will explain the theoretical foundation for laccase transcription in KC462061, paving the road for commercialization and usage.

摘要

真菌漆酶具有较高的催化效率,可用于去除原油,因为它们能氧化各种脂肪族和芳香族碳氢化合物,并将其转化为无害化合物或毒性较小的化合物,从而加速原油的生物降解潜力。漆酶是重要的基因家族,漆酶基因的功能因转录和功能而异。本研究除了研究在芳香化合物和金属离子存在下参与生物降解的八个漆酶()基因的转录水平外,还研究了使用KC462061对原油的生物降解。在原油存在的情况下漆酶活性的时间进程曲线表明,五种诱导剂单独或组合使用对漆酶活性都有非常积极的影响。在原油存在的状态下,Cu-ABTS化合物的协同作用导致10天后漆酶产量比对照提高了22倍。KC462061对原油脂肪族和芳香族碳氢化合物的生物降解效率分别为82.1±0.2%和77.4±0.6%。在KC462061中添加Cu-ABTS化合物提高了原油生物降解效率。气相色谱-质谱法是一种非常准确的工具,可用于证明KC462061对原油的生物降解效率。添加五种诱导剂后,在KC462061漆酶蛋白的SDS-PAGE中观察到条带强度存在显著差异,但Cu-ABTS化合物对非常特定的漆酶电泳有高度影响。定量实时聚合酶链反应(qPCR)用于分析KC462061中八个漆酶基因的转录谱,并使用经过验证的参考基因。铜离子和Cu-ABTS对高效漆酶表达谱分析非常有效,主要通过和转录诱导。本研究将解释KC462061中漆酶转录的理论基础,为商业化和应用铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b3f/9026905/e949a27e8e3d/biology-11-00564-g001.jpg

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